4.5 Article

New interatomic potential for simulation of pure magnesium and magnesium hydrides

期刊

COMPUTATIONAL MATERIALS SCIENCE
卷 154, 期 -, 页码 295-302

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.commatsci.2018.07.051

关键词

Magnesium; Diffusion; Interatomic potentials; Phase transitions; Magnesium hydrides

资金

  1. RFBR [16-33-60027]
  2. COMET program within the K2 Center Integrated Computational Material, Process and Product Engineering (IC-MPPE) [859480]
  3. Austrian Federal Ministry for Transport, Innovation and Technology (BMVIT)
  4. Austrian Federal Ministry for Digital and Economic Affairs (BMDW)
  5. federal state of Styria
  6. federal state of Upper Austria
  7. federal state of Tyrol

向作者/读者索取更多资源

We develop an interatomic potential intended for the study of Mg-H system using atomistic methods. The reported potential has an angular-dependent form and can be used for simulation of pure magnesium, as well as for consideration of binary cases including Mg and H. Summary of the performed tests on elastic, thermophysical and diffusional properties proves that the potential has a wide range of applicability. For example, it can be used to model phase transitions existing in pure magnesium (liquid <--> hcp and bcc <--> hcp). We also show how the model represents energies of different point defects and stacking faults in Mg. The primary purpose of the potential is the simulation of hydrogen behavior in magnesium. Here we show examples of the hydrogen diffusion and clusterization in hcp magnesium. Also, it is shown that the proposed potential reproduces stable structures for some of the existing magnesium hydrides: alpha-MgH2 (P4(2)/mnm) and gamma-MgH2 (Pbcn).

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